We use femtosecond extreme ultraviolet pulses derived from a free electron laser to excite and probe surface acoustic waves (SAWs) on the (001) surface of single crystal SrTiO3. SAWs are generated by a pair of 39.9 nm pulses crossed at the sample with the crossing angle defining the SAW wavelength at 84 nm. Detection of SAWs is performed via diffraction of a time-delayed 13.3 nm probe pulse by SAW-induced surface ripples. Despite the low reflectivity of the sample in the extreme ultraviolet range, the reflection mode detection is found to be efficient because of an increase in the diffraction efficiency for shorter wavelengths. We describe a methodology for extracting the SAW attenuation in the presence of a thermal grating, which is ba...
It is shown that direct information from surface acoustic waves (SAWs) of bulk transparent materials...
Focusing of high-amplitude surface acoustic waves leading to material damage is visualized in an all...
The application of all-optical time resolved techniques to nano structured Surface Phononic Crystals...
We use femtosecond extreme ultraviolet pulses derived from a free electron laser to excite and probe...
International audienceThe development of transducers to excite and detect coherent surface acoustic ...
We study ultrahigh frequency surface acoustic wave propagation in nickel-on-sapphire nanostructures....
High-frequency surface acoustic waves (SAWs) in the GHz range can be generated using absorption from...
High-frequency surface acoustic waves (SAWs) in the GHz range can be generated using absorption from...
We report the investigation of surface acoustic waves (SAWs) propagating on a 1D phononic surface (P...
Surface Acoustic Waves (SAW) provide a means of studying low temperature anelastic relaxations of cr...
We use coherent extreme ultraviolet radiation to probe surface acoustic wave propagation in nickel-o...
We investigate the excitation of coherent acoustic and optical phonons by ultrashort extreme ultravi...
Ultrafast laser pulses incident on metals can lead to the generation of coherent phonon wave packets...
International audienceWe present a study of surface acoustic waves (SAW) propagation on a 1D phononi...
The aim of the work is to deelop theoretical and experimental researches of SAW induced by laser imp...
It is shown that direct information from surface acoustic waves (SAWs) of bulk transparent materials...
Focusing of high-amplitude surface acoustic waves leading to material damage is visualized in an all...
The application of all-optical time resolved techniques to nano structured Surface Phononic Crystals...
We use femtosecond extreme ultraviolet pulses derived from a free electron laser to excite and probe...
International audienceThe development of transducers to excite and detect coherent surface acoustic ...
We study ultrahigh frequency surface acoustic wave propagation in nickel-on-sapphire nanostructures....
High-frequency surface acoustic waves (SAWs) in the GHz range can be generated using absorption from...
High-frequency surface acoustic waves (SAWs) in the GHz range can be generated using absorption from...
We report the investigation of surface acoustic waves (SAWs) propagating on a 1D phononic surface (P...
Surface Acoustic Waves (SAW) provide a means of studying low temperature anelastic relaxations of cr...
We use coherent extreme ultraviolet radiation to probe surface acoustic wave propagation in nickel-o...
We investigate the excitation of coherent acoustic and optical phonons by ultrashort extreme ultravi...
Ultrafast laser pulses incident on metals can lead to the generation of coherent phonon wave packets...
International audienceWe present a study of surface acoustic waves (SAW) propagation on a 1D phononi...
The aim of the work is to deelop theoretical and experimental researches of SAW induced by laser imp...
It is shown that direct information from surface acoustic waves (SAWs) of bulk transparent materials...
Focusing of high-amplitude surface acoustic waves leading to material damage is visualized in an all...
The application of all-optical time resolved techniques to nano structured Surface Phononic Crystals...